[0001] The invention relates to a system for handling slides, particularly a slide holder
and feeding unit comprising of a tray moving on a carriage provided with seats for
the slides and with a tray moving mechanism; a slide loading arm; and a slide holding
frame provided with a slide loading arm driving motor.
[0002] There is a continuously growing need for complex data processing, registering and
archival storage systems and for the possibility of interactive consultation of diagnostic
results on the field of pathological research and medical practice.
[0003] A considerable part of the improvements relate to the adaptation of existing microscopes
to the above systems. However, the structural features of microscopes applied for
manual inspection do not allow much change in this respect. For the exploitation of
the high velocity of the digital data processing it is inevitable to provide a slide
feeding system, which is capable of following a high capacity, automated microscope
operating with slide digitalization. Therefore, constructions have been developed
for automated slide feeding.
[0004] The
patent WO9739348 discloses a slide feeder for vertical conveying microscope slides. This transport
device includes a pair of belts, the belts having a plurality of treads affixed to
the outside surfaces of the belts. The belts are driven in opposite directions, so
that the treads which face each other move in the same direction, either up or down.
Each slide is cradled by a pair of treads, and is moved up or down, while remaining
in a generally horizontal position. At the end of the path, the slides leave the system
and are delivered to a storage box or a microscope table.
[0005] This slide feeder, however, does not provide for the required positioning of the
slides. Furthermore, it is often not applicable for certain microscopes, due to the
vertical delivering of the slides.
[0006] Patent WO0214877 provides a retrieval unit for a microarray processing device to transport a work
piece such as a microscope slide before or after processing operations by the microarray
processing device. The retrieval unit may include a storage unit and a lifter unit.
The storage unit has a storage frame, a storage rack and a first motor. The storage
rack is adapted to store microscope slides.
[0007] The storage rack is mounted to the storage frame and capable of sliding in a first
plane. The lifter unit has a loader frame, a loader arm and a second motor, wherein
the loader arm is capable of sliding in a second plane and accessing a selected microscope
slide from the storage rack. After the microscope slide is secured to the loader arm,
the microscope slide may be transported from the storage rack to a selected workstation
such as an alignment mechanism. The retrieval unit is automated by having a computer
control the operations of the motors.
[0008] The main advantage of this retrieval unit developed mainly for slide-matrix printing
is that the errors resulted from the manual positioning may be avoided, and that time
consuming manual work is not needed. However, the whole device is rather voluminous
and the units of the device have sophisticated mechanical constructions optimized
for the work in a printer, and therefor they cannot be satisfactorily used for other
purposes.
[0009] An automated slide loader cassette is disclosed in
WO03/038504.
[0010] Another slide feeding unit for microscopes is disclosed in
WO2004113989. This device includes a slide magazine having a base plate, a toothed rack secured
to a magazine side wall and slide guiding elements perpendicular to an open magazine
side. The unit further includes a magazine moving mechanism having a magazine-receiving
trough including opposite side plates. Two rotary shafts supported by the trough extend
along the trough side plates. Magazine-advancing feeding gears are supported by the
side plates and may mesh with the toothed magazine rack. Lifting gears, held in the
side plates, have pins on which the magazine is supported when raised or lowered.
Driving worm gears are rotated by the shafts and mesh with the feeding gears and the
lifting gears. The unit also includes a slide feeding device having a robot arm displaceable
perpendicularly to the direction of advance of the magazine for removing a slide from
the magazine.
[0011] The unit according to
WO2004113989 has, however rather complicated construction.
[0012] The object of the present invention is therefore to provide a slide holder and feeding
unit of relatively simple construction, which is capable of feeding fresh, damp slides,
without the danger of damaging them. A further object is to provide a device, which
is tolerant with respect to the dimensional accuracy of the slides. The above objects
are achieved by a slide holder and feeding unit according to Claim 1.
[0013] Rivets and/or a rail are protruding into the opening of the slide holder for holding
the slides, wherein at least one of the rivets protruding into the opening of the
slide holder is arranged on a sprig loaded arm and more than one, preferably two rivets
are fixed rivets, or there is a rail on the slide holder instead of the fixed rivets.
[0014] Preferably, all the rivets have a head on their lower ends, and their diameters are
growing upwards.
[0015] According to a preferred embodiment, the control member of the crank coupled to the
crosses is a pin arranged on the mantle of the crank disc.
[0016] The lifting means of the device is a rotatable arm holding a roller cooperating with
a recess of the crank, said arm being connected with an adjustable rod system, which
in turn is connected at the other end with a rotatable lifting arm rotating on a pin,
wherein said lifting arm is arranged between the rod system of the slide pusher and
the rod system of the slide supporting plate.
[0017] The slide loading arm is connected with the tray moving motor via spindle bearing
in the slide holding frame.
[0018] The slide holder is provided with a spring loaded arm arranged on one side thereof,
and there is a rivet on that arm, preferably in the middle of the arm. The diameter
of the rivet is growing upwards. On the other side of the slide holder, there are
rivets, preferably two rivets or a rail for positioning the slide in the slide holder.
[0019] A slide loading arm is arranged movably and tiltable above and a supporting plate
is arranged movably and tiltable below the slide holder, said loading arm and said
supporting plate cooperating with each other. Jump control of tray is carried out
by cooperation of the rotating crank connected to the tray driving motor and the outstretched
Maltese crosses on the lower side of the tray, wherein the crank is provided with
an element, preferably a recess or a nose, on the peripheral side surface, opposite
to the pin or pins of the crank, said element controlling the mechanism tilting the
supporting plate and the slide loading arm.
[0020] The invention will be described in detail in the following description with reference
to the accompanying drawings given by way of non-limiting examples and in which
Fig. 1 shows a perspective view of the slide holder and feeding unit according to
the invention,
Fig. 2 shows a perspective bottom view of the tray of the slide holder and feeding
unit according to the invention, with an objective,
Fig. 3 is a perspective top view of the lifting means of the slide holder and feeding
unit according to the invention,
Fig. 4 is the perspective bottom view of the lifting means for tilting the slide loading
arm and the supporting plate,
Fig. 5 is the bottom view of the outstretched Maltese crosses and the crank,
Fig. 6 is the perspective top view of the slide holder and
Fig. 7 is the cross section of a part of the slide holder and a rivet.
[0021] The slide feeder 1 in Fig. 1 comprises a tray 6 and a slide holding frame 7, said
tray holding the slides 2 in seats 3 and being moved by a tray driving motor 5 in
carriage 4. The slide holding frame 7 is provided with slide loading arm 9, slide
loading arm driving motor 8 and spindle 10. A supporting plate 11 cooperating with
the slide loading arm 9 and a tiltable rod 12 for holding the slide loading arm 9
belong to the slide holding frame 7 as well.
[0022] During operation of the device, slides 2 are arranged in the seats 3 of the tray
6. Then, tray 6 is pushed to the carriage 4 of the slide feeder 1, wherein a sensor
is detecting the presence of the tray and the slide loading arm 9 is driven above
the corresponding seat 3.
[0023] Fig. 5 shows that a plurality of outspread Maltese crosses 13 are arranged on the
lower side of the tray 6. Opposite to and parallel with the crosses, a crank 14 is
arranged in the carriage 4 and coupled to said crosses (Fig. 3). There is a moon shaped
cam 16 and a pin 18 on the upper surface of the crank 14, said cam protruding into
the curved locking recesses 15 of the crosses 13, said pin protruding into the driving
slots 17 of the crosses. On the side wall of crank 14, opposite to the pin 18, there
is a recess 19 (Fig.3) receiving a roll 21 running on the side wall of the crank 14
and arranged on a lever 22. This roll is cooperating with the lifting means tilting
the rod 12 (Fig. 3) when carriage 4 is in locked position.
[0024] There is a feeler 23 on the upper side of the carriage 4, for detecting if there
is a 2 slide in the given seat 3.
[0025] Jump control of tray 6 is carried out by rotating crank 14 with the tray driving
motor.
[0026] After the slide 2 and slide holder 30 have reached the same level, recess 19 of the
crank, a lifting means deflects loading arm 9 of the slide holding frame 7 (Fig. 4)
and moves it towards the slide holder (30). In the meantime, bits 33 on slide loading
arm 9 moving on the spindle push slide 2 into slide holder 30. At the same time, support
plate 11 is tilting upwards, preventing slide 2 to fall through the opening of the
slide holder 30, before being clamped therein.
[0027] Fig.4 shows the lifting means referred to above. Here, a roll 20 arranged on one
end of tiltable lever 22 is bearing up on the lateral surface of the crank. At the
other end of lever 22 an adjustable rod 24 is connected, which in turn is connected
at the other end thereof to another lever 25 rotating around pin 26. Lever 25 is arranged
between the tiltable rod 12 holding the slide loading arm 9 and the rod 28 holding
the supporting plate 11, said rods being pressed together by a spring. When recess
19 of crank 14 reaches roll 20, lifting mechanism is put in action, lever 25 as well
as lever 26 is turning and, as a result, slide loading arm 9 is deflecting to slide
2 and support plate 11 is tilting upwards, holding slide 2 in position.
[0028] When slide 2 reached the correct position and spring loaded arm 32 clamps the slide,
lifting means deflects support plate 11 and tilts upwards slide loading arm 9 which
is then driven to the initial position by spindle 10, and slide holder carries the
slide to the objective.
[0029] Fig. 6 shows that rivets 34 and - in certain cases - a rail are protruding into the
opening of slide holder 30. At least one of the rivets 34 is arranged on a spring
loaded arm 32 and at least one, preferably two rivets are fixed on the frame of the
slide holder. Instead of the fixed rivets, a rail may be applied.
[0030] Fig. 7 shows that rivets 34 are provided with a head on their lower end, said heads
holding the slide 2, meanwhile the diameter of the rivets is growing upwards, for
pressing the slides downwards and clamping them in this way.
[0031] The main advantage of the present invention is, that it makes holding and feeding
the microscope slides an easy and reliable way, and is of simple construction. Due
to the fact, that the slides are in horizontal position during the feeding process
and do not contact any other slide, the device according to the invention can feed
fresh, still wet slides as well. A further advantage of the device according to the
invention is that it is not sensitive with respect to the dimensional accuracy of
the slides and can, therefore accept slides with relatively high deviation in measure.
1. A slide holder and feeding unit comprising : a tray (6) moving on a carriage (4),
said tray (6) being provided with seats (3) for the slides (2) and with a tray moving
mechanism (5); a slide loading arm; and a slide holding frame (7) provided with a
slide loading arm driving motor (8), the slide holder (30) being provided with slide
holding elements (34), the slide holder and feeding unit being characterized in that: a plurality of Maltese cross elements (13) is arranged on the lower side of the
tray (6) of the slide feeder (1) and a crank (14) is arranged in the carriage (4),
opposite to said cross elements (13), wherein the Maltese cross elements (13) consist
of parallel driving slots (17) and curved locking recesses (15) arranged along a straight
line and said crank (14) is coupled to said Maltese cross elements (13) by a moon
shaped cam (16) protruding into the curved locking recesses (15) and a pin (18) protruding
into said driving slots (17); said slide loading arm (9) is arranged movably and tiltably
above the slide holder (30) and a supporting plate (11) is arranged movably and tiltably
below the slide holder (30), wherein said supporting plate (11) and said slide loading
arm (9) are connected to each other by a lever (25) rotating around a pin (26), wherein
the slide holding frame (7) is provided with lifting means for tilting the slide loading
arm (9) and the supporting plate (11), said lifting means being actuated mechanically
by a control member (18,19) arranged on the crank (14).
2. The slide holder and feeding unit according to claim 1, characterized in that rivets (34) are protruding into the opening of the slide holder (30) for holding
the slides (2).
3. The slide holder and feeding unit according to claim 1, characterized in that rivet (34) and rail are protruding into the opening of the slide holder (30) for
holding the slides.
4. The slide holder and feeding unit according to claim 2 or 3, characterized in that at least one of the rivets (34) protruding into the opening of the slide holder (30)
is arranged on a spring loaded arm (32) and either more than one, preferably two rivets
(34) are fixed rivets, or there is a rail on the slide holder (30) instead of the
fixed rivets.
5. The slide holder and feeding unit according to any of claims 2 to 4, characterized in that all the rivets have a head on their lower ends, and their diameters are growing upwards.
6. The slide holder and feeding unit according to claim 1, characterized in that the control member of the crank (14) coupled to the crosses (13) is the pin (18)
arranged on the mantle of the crank disc.
7. The slide holder and feeding unit according to claim 1, characterized in that said lifting means is a rotatable arm (22) holding a roller (20) cooperating with
a recess (19) of the crank (14), said arm (22) being connected with an adjustable
rod system (24), which in turn is connected at the other end with a rotatable lifting
arm (25) rotating on a pin (26), wherein said lifting arm (22) is arranged between
the rod system (12) of the slide pusher (9) and the rod system (28) of the slide supporting
plate (11).
8. The slide holder and feeding unit according to claim 1 or 2, characterized in that the slide loading arm (9) is connected with the tray moving motor (8) via spindle
(10) bearing in the slide holding frame (7).
1. Eine Objektträgerhalterung und -Zuführeinheit, aufweisend:
Ein Tablett (6), das sich auf einem Schlitten (4) bewegt, welches Tablett (6) mit
Sitzen (3) für die Objektträger (2) und mit einem das Tablett bewegenden Mechanismus
(5) ausgestattet ist;
einen Objektträgerladearm; und
einen Objektträgerhalterahmen (7), der mit einem Objektträgerladearmantriebsmotor
(8) ausgestattet ist,
wobei die Objektträgerhalterung (30) mit Objektträgerhalteelementen (34) ausgestattet
ist,
welche Objektträgerhalterung und -Zuführeinheit dadurch gekennzeichnet ist, dass:
eine Mehrzahl von Malteserkreuzelementen (13) auf der unteren Seite des Tabletts (6)
der Objektträgerzuführung (1) angeordnet ist und eine Kurbel (14) in dem Schlitten
(4) gegenüber der genannten Kreuzelemente (13) angeordnet ist, wobei die Malteserkreuzelemente
(13) aus parallelen Antriebsschlitzen (17) und gekrümmten Verriegelungsaussparungen
(15) bestehen, die entlang einer geraden Linie angeordnet sind, und die genannte Kurbel
(14) mit den genannten Malteserkreuzelementen (13) durch eine mondförmige Nocke (16),
welche in die gekrümmten Verriegelungsaussparungen (15) hervorsteht, und einen Stift
(18), der in die genannten Antriebsschlitze (17) hervorsteht, gekoppelt wird;
wobei der genannte Objektträgerladearm (9) beweglich und neigbar über der Objektträgerhalterung
(30) angeordnet ist und eine Stützplatte (11) beweglich und neigbar unter der Objektträgerhalterung
(30) angeordnet ist, wobei die genannte Stützplatte (11) und der genannte Objektträgerladearm
(9) durch einen Hebel (25) miteinander verbunden sind, der um einen Stift (26) rotiert;
wobei der Objektträgerhalterahmen (7) mit Hebemitteln zum Neigen des Objektträgerladearms
(9) und der Stützplatte (11) ausgestattet ist, welche Hebemittel von einem Steuerungselement
(18, 19) mechanisch betätigt werden, das auf der Kurbel (14) angeordnet ist.
2. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 1, dadurch gekennzeichnet, dass Nieten (34) in die Öffnung der Objektträgerhalterung (30) hervorstehen, um die Objektträger
(2) zu halten.
3. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 1, dadurch gekennzeichnet, dass Niete (34) und Schiene in die Öffnung der Objektträgerhalterung (30) hervorstehen,
um die Objektträger zu halten.
4. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 2 oder 3, dadurch gekennzeichnet, dass mindestens eine der Nieten (34), die in die Öffnung der Objektträgerhalterung (30)
hervorstehen, auf einem federbelasteten Arm (32) angeordnet ist und entweder mehr
als eine, vorzugsweise zwei Nieten (34) fixierte Nieten sind, oder es anstelle der
fixierten Nieten eine Schiene auf der Objektträgerhalterung (30) gibt.
5. Die Objektträgerhalterung und -Zuführeinheit nach einem der Ansprüche 2 bis 4, dadurch gekennzeichnet, dass alle Nieten einen Kopf an ihren unteren Enden haben und ihre Durchmesser nach oben
hin wachsen.
6. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 1, dadurch gekennzeichnet, dass das mit den Kreuzen (13) gekoppelte Steuerelement der Kurbel (14) der auf dem Mantel
der Kurbelscheibe angeordnete Stift (18) ist.
7. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 1, dadurch gekennzeichnet, dass das genannte Hebemittel ein rotierbarer Arm (22) ist, der eine Rolle (20) hält, die
mit einer Aussparung (19) der Kurbel (14) zusammenwirkt, welcher Arm (22) mit einem
einstellbaren Stangensystem (24) verbunden ist, welches wiederum an dem unteren Ende
mit einem rotierbaren Hebearm (25), der um einen Stift (26) rotiert, verbunden ist,
wobei der genannte Hebearm (22) zwischen dem Stangensystem (12) des Objekträgerschiebers
(9) und dem Stangensystem (28) der Objektträgerstützplatte (11) angeordnet ist.
8. Die Objektträgerhalterung und -Zuführeinheit nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der Objektträgerladearm (9) über Spindel (10), die in dem Objektträgerhalterahmen
(7) lagert, mit dem das Tablett antreibenden Motor (8) verbunden ist.
1. Unité de support et d'alimentation pour diapositive comprenant : un plateau (6) se
déplaçant sur un chariot (4), ledit plateau (6) étant muni de logements (3) pour les
diapositives (2) et d'un mécanisme de déplacement de plateau (5) ; un bras de chargement
de diapositive ; et un cadre de maintien de diapositive (7) muni d'un moteur d'entraînement
de bras de chargement de diapositive (8), le porte-diapositive (30) étant muni d'éléments
de maintien de diapositive (34), l'unité de support et d'alimentation pour diapositive
étant
caractérisée en ce que :
une pluralité d'éléments en croix de Malte (13) sont agencés sur le côté inférieur
du plateau (6) du dispositif d'alimentation en diapositive (1) et une manivelle (14)
est agencée dans le chariot (4), opposée auxdits éléments en croix (13), dans lesquels
les éléments en croix de Malte (13) consistent en fentes d'entraînement parallèles
(17) et en parties en retrait de verrouillage incurvées (15) agencées le long d'une
ligne droite et ladite manivelle (14) est couplée auxdits éléments en croix de Malte
(13) par une came en forme de lune (16) dépassant dans les parties en retrait de verrouillage
incurvées (15) et un ergot (18) dépassant dans lesdites fentes d'entraînement (17)
;
ledit bras de chargement de diapositive (9) est agencé de façon mobile et de façon
à pouvoir basculer au-dessus du porte-diapositive (30) et une plaque de support (11)
est agencée de façon mobile et de façon à pouvoir basculer au-dessous du porte-diapositive
(30), dans lequel ladite plaque de support (11) et ledit bras de chargement de diapositive
(9) sont reliés l'un à l'autre par un levier (25) tournant autour d'un ergot (26),
dans lequel le cadre de maintien de diapositive (7) est muni d'un moyen de levage
pour basculer le bras de chargement de diapositive (9) et la plaque de support (11),
ledit moyen de levage étant mécaniquement mis en oeuvre par un élément de commande
(18, 19) agencé sur la manivelle (14).
2. Unité de support et d'alimentation pour diapositive selon la revendication 1, caractérisée en ce que des rivets (34) sont saillants dans l'ouverture du porte-diapositive (30) pour maintenir
les diapositives (2).
3. Unité de support et d'alimentation pour diapositive selon la revendication 1, caractérisée en ce qu'un rivet (34) et un rail sont saillants dans l'ouverture du porte-diapositive (30)
pour maintenir les diapositives.
4. Unité de support et d'alimentation pour diapositive selon la revendication 2 ou 3,
caractérisée en ce qu'au moins un des rivets (34) dépassant dans l'ouverture du porte-diapositive (30) est
agencé sur un bras chargé par ressort (32) et soit plus d'un, de préférence deux rivets
(34) sont des rivets fixes, soit il y a un rail sur le porte-diapositive (30) au lieu
des rivets fixes.
5. Unité de support et d'alimentation pour diapositive selon l'une quelconque des revendications
2 à 4, caractérisée en ce que tous les rivets ont une tête sur leurs extrémités inférieures et leurs diamètres
croissent vers le haut.
6. Unité de support et d'alimentation pour diapositive selon la revendication 1, caractérisée en ce que l'élément de commande de la manivelle (14) couplé aux croix (13) est l'ergot (18)
agencé sur l'enveloppe du disque de manivelle.
7. Unité de support et d'alimentation pour diapositive selon la revendication 1, caractérisée en ce que ledit moyen de levage est un bras rotatif (22) maintenant un rouleau (20) coopérant
avec une partie en retrait (19) de la manivelle (14), ledit bras (22) étant relié
à un système de tige réglable (24), qui est relié à son tour au niveau de l'autre
extrémité à un bras de levage rotatif (25) tournant sur un ergot (26), dans lequel
ledit bras de levage (22) est agencée entre le système de tige (12) du poussoir de
diapositive (9) et le système de tige (28) de la plaque de porte-diapositive (11).
8. Unité de support et d'alimentation pour diapositive selon la revendication 1 ou 2,
caractérisée en ce que le bras de chargement de diapositive (9) est relié au moteur d'entraînement de plateau
(8) via un fuseau (10) portant dans le cadre de maintien de diapositive (7).